INHIBITION OF MIRNA-212/132 IMPROVES THE REPROGRAMMING OF FIBROBLASTS INTO INDUCED PLURIPOTENT STEM CELLS BY DE-REPRESSING IMPORTANT EPIGENETIC REMODELLING FACTORS

Inhibition of miRNA-212/132 improves the reprogramming of fibroblasts into induced pluripotent stem cells by de-repressing important epigenetic remodelling factors

MicroRNAs (miRNAs) repeatedly have been demonstrated to play important roles in the generation of induced Drive Roller pluripotent stem cells (iPSCs).To further elucidate the molecular mechanisms underlying transcription factor-mediated reprogramming we have established a model, which allows for the efficient screening of whole libraries of miRNAs

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Pediatric femoral shaft fracture requiring revision surgery for nonunion associated with vitamin D and K deficiencies: a case report

Abstract Background Nonunion of femoral shaft fractures in children is rare, and there is no clear treatment Connector Tubing protocol.In this case report, a pediatric femoral shaft fracture that developed in nonunion due to vitamin deficiency after osteosynthesis, which was successfully treated with vitamin augmentation and replacement with a rigi

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Effect of stem rot on wood basic density, carbon, and nitrogen content of living deciduous trees in hemiboreal forests

While numerous Groceries studies have focused on analyzing various aspects of the carbon (C) budget in forests, there appears to be a lack of comprehensive assessments specifically addressing the impact of stem rot on the C budget of broadleaf tree species, especially in old-growth forests where stem rot is prevalent.One of the main challenges in a

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